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S Majumder

Publications and source records attributed to S Majumder.

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Role of ATP and enzyme-bound nascent peptides in the control of elongation for mycobacillin synthesis.

The enzyme fraction A, a constituent of the three-fraction (A, B and C) enzyme complex mycobacillin synthetase, elongated tri- and tetra-peptides, under enzyme-bound conditions, to tetra- and penta-peptides respectively in the presence of the 'next' amino acid (in the mycobacillin sequence). The enzyme fraction B synthesized hexapeptide from free pentapeptide and the next amino acid, but synthesized heptapeptide from hexapeptide only under enzyme-bound conditions in the presence of the next amino acid. Similarly, the enzyme fraction C synthesized decapeptide from free nonapeptide in the presence of the next amino acid, but undecapeptide only from enzyme-bound decapeptide in the presence of the next amino acid during the elongation process. The Km values for the initiating reactions for each of the three enzyme fractions were 6-7-fold lower than those for the succeeding reactions catalysed by each of the enzyme fractions. The specificity of the initiation and elongation is discussed in the light of these findings.

Adenosine Triphosphate↗

Characterization of three-fraction mycobacillin synthetase.

Mycobacillin synthetase lacks aspartic acid racemase, alanine racemase and glutamic acid racemase activities. The enzyme also does not respond to ATP-[32P]Pi exchange, nor does it catalyse the antibiotic synthesis in presence of amino acids of configuration opposite to that present in the molecule. Preincubation with optical isomers of opposite configuration inhibited the ATP-[32P]Pi exchange reaction to the extent of 60-90%. None of the three fractions of mycobacillin synthetase contained a pantothenic acid arm. Two molecules of ATP are required to synthesize one peptide bond of mycobacillin. Intermediate peptides of mycobacillin are not covalently linked to the three-fraction mycobacillin synthetase.

Adenosine Triphosphate↗

Purification of the constituent enzyme fractions of mycobacillin synthetase.

The final purification of the three-fraction enzyme complex mycobacillin synthetase was done by hydroxyapatite column chromatography and sucrose-density-gradient centrifugation; each of the fractions obtained migrates as a single component in SDS/polyacrylamide-gel electrophoresis and gel electrofocusing. The Mr of the enzyme fractions A, B and C by gel filtration is 260 000, 190 000 and 105 000, and that by SDS/polyacrylamide-gel electrophoresis is 252 000, 198 000 and 108 000 respectively. None of the enzyme fractions appears to possess subunit structure.

Centrifugation, Density Gradient↗

RepC is rate limiting for pT181 plasmid replication.

The effect on pT181 plasmid replication of the concentration of the plasmid-coded initiator protein, RepC, has been analyzed. In one type of experiment, plasmid replication was found to stop immediately after the addition of an inhibitory concentration of chloramphenicol (Cm) to growing cultures. Chromosomal replication showed the slow turnoff that is usual for Cm inhibition. Because plasmid replication rate is determined autogenously, no host factor can be rate limiting, suggesting that the specific factor affected is Rep C. In another type of experiment, we constructed a translational fusion between the repC coding sequence and a translationally inducible Cm-acetylase gene, cat-86, using pUB110 as the carrier replicon. The fusion plasmid showed an eightfold amplification of its own copy number and a similar amplification of a co-resident pT181 plasmid upon Cm induction. The amplified plasmids did not show autocatalytic runaway replication but rather established stable elevated copy numbers, indicating the existence of a secondary level of regulation. These results suggest that RepC is rate limiting for pT181 replication and support the hypothesis that pT181 replication is regulated at the level of RepC synthesis. The nature of the secondary regulation is unknown.

Acetyltransferases↗

Functional characterization of constituent enzyme fractions of mycobacillin synthetase.

The enzyme fraction A, a constituent enzyme of the three-fraction enzyme mycobacillin synthetase, independently and sequentially activated five amino acids starting from L-proline, producing the pentapeptide Pro(Asp1,Glu1,Tyr1)Asp. The fractions B and C were unable to function independently. However, the fraction B synthesized the nonapeptide Pro(Asp3,Glu1,Tyr2,Ser1)Leu, sequentially activating the pentapeptide and next four amino acids, whereas the fraction C synthesized mycobacillin by the sequential activation of the nonapeptide and the remaining four amino acids. The pH optima of the above enzymes are almost identical (pH 7.8), but their Km values are a little different.

Adenosine Triphosphate↗

Translocation of mycobacillin synthetase in Bacillus subtilis.

The extracellular release of mycobacillin from Bacillus subtilis first occurred in the medium at the onset of stationary phase and continued at a high rate even after 6 days. Mycobacillin synthetase activity appeared earlier than late-exponential phase in the cytosol of producer cells and was not sedimentable even at 105 000 g. The activity then quickly reached the maximum late in the stationary phase. With further increase in the age of the culture, the activity gradually disappeared from the cytosol, to reappear concomitantly in the membrane in an insoluble particulate form, even in absence of protein synthesis. The membrane-bound synthetase activity was sedimentable at 10 000 g and was fairly active even after 5 days.

Bacillus subtilis↗

Accumulation of peptides by mycobacillin-negative mutants of Bacillus subtilis B3.

Thirteen mycobacillin-negative (My-) mutants of Bacillus subtilis B3 were isolated from an auxotrophically tagged mycobacillin producer organism. The wild-type producer, three feeble producers and three strictly My- mutants did not accumulate any ninhydrin-positive peptide in the culture medium while the remaining seven My- mutants did accumulate ten such peptides whose amino acid composition indicated that there might be only three different peptides. The N-terminal and C-terminal amino acid residues implicated one of these peptides as a pentapeptide intermediate in mycobacillin synthesis; this was further confirmed by its molecular weight and sequence. Studies on cell-free synthesis showed that only the enzyme system from the wild-type strain synthesized mycobacillin while the defective ones from all the My- mutants synthesized one and the same pentapeptide as found in the culture broth of some of the mutants. Further studies in which the enzymes responsible for mycobacillin synthesis by cell-free extracts were separated into three fractions, A, B and C, showed that seven of the mutants were defective in fraction B whereas the three other mutants had defects in both fractions B and C. Thus the pentapeptide Pro----Asp----Glu----Tyr----Asp appears to be implicated in mycobacillin biosynthesis.

Amino Acid Sequence↗

Standardization of parameters for the mycobacillin synthetase activity.

An effective method of preparation involving sonication was developed for cell-free mycobacillin synthetase from Bacillus subtilis. The enzyme showed optimum activity at a buffer concentration of 50 mM (Tris-HCl) and pH 7.5. ATP and Mg2+ which were essential for synthesis showed an optimum requirement at a ratio of 1:1. The synthetase was markedly inhibited by ADP whereas AMP was without any effect. ATP or ATP-generating system could not be replaced by GTP, UTP or CTP. Co2+ and Mn2+ could to some extent substitute Mg2+. Mercapto reagents inhibited the antibiotic synthesis. Exogenous addition of pantothenic acid had no effect.

Bacillus subtilis↗

Fractionation of the mycobacillin-synthesizing enzyme system.

The mycobacillin-synthesizing enzyme system was highly purified by fractionation at 30-55% (NH4)2SO4 saturation. The enzyme concentrate on Sephadex G-200 gel chromatography was resolved into three distinct fragments. Each of the fragments on further purification by DEAE-cellulose ion-exchange chromatography behaved as a single-component system, as clearly indicated by the sharpness of the peaks in the elution diagram. None of the fragments alone nor any two of them in all possible combinations possessed mycobacillin-synthesizing activity, which was restored only when the three fragments were used together in the test system.

Antifungal Agents↗

Coding sequence for the pT181 repC product: a plasmid-coded protein uniquely required for replication.

pT181 is a 4.4-kilobase plasmid from Staphylococcus aureus specifying tetracycline resistance and present in about 20 copies per cell. The existence of a diffusible pT181 product required for plasmid replication has been proposed on the basis of trans-complementable thermosensitive mutants defective in plasmid maintenance (phenotype Tsr). In this report, the Tsr mutants are shown to have primary replication defects, and the genetic complementation data are confirmed biochemically. All of five mutations are in a single cistron, the repC cistron; interruption of the plasmid DNA molecule at any of three neighboring restriction sites inactivates repC function. Analysis of the DNA sequence in this region reveals an open reading frame of 939 base pairs which encodes the repC product, a 313-amino acid protein. pT181 replication has been demonstrated in cell-free extracts to require specifically a pT181-coded protein of approximately the same size, and it is proposed that this protein is, indeed, the repC product. Preliminary evidence is discussed suggesting that the pT181 replication rate is controlled at the level of synthesis of the repC protein.

Bacterial Proteins↗

[Spontaneous infection of Hymenolepis nana in hamsters (author's transl)].

Hymenolepis nana (von Siebold, 1852), the dwarf tapeworm causing hymenolepiasis, has been reported to be the common intestinal cestode of rodents and man throughout the world. The authors found spontaneously occurred hymenolepiasis in conventional laboratory hamsters with mass and heavy infections. Some individuals were infected with as many as 188 to 290 worms and in addition, numerous cysticercoids were found in the intestinal villi from the same hamsters. According to the early investigations it is said that there are two ways of infection to rodents. In this study the authors considered a natural autoinfection is to be the case because cysticercoids and immature worms were abundant in the intestines of hamsters. The infection rate of the hamsters was 15% as 6 hamsters were found infected out of 40. All the cases of the heavily infected hamsters showed showed loss of weight and some of them died. Particular damage of the intestinal mucosa was not seen by post-mortem examinations, however, chronic inflammation and destruction of intestinal mucosa caused by the worms observed microscopically (the given pictures). Heavy infection of Hymenolepis nana occurred spontaneously in hamsters has rarely been found in Japan. The case reported here seems to be very peculiar one.

Animals↗